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Author McGreevy, P.D.; McLean, A.N. url  doi
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  Title Roles of learning theory and ethology in equitation Type Journal Article
  Year 2007 Publication Journal of Veterinary Behavior: Clinical Applications and Research Abbreviated Journal  
  Volume 2 Issue 4 Pages 108-118  
  Keywords ethological training; equine ethnology; equitation; horse behavior; learning theory  
  Abstract By definition, ethology is primarily the scientific study of animal behavior, especially as it occurs in a natural environment; applied ethology being the study of animal behavior in the human domain. The terms equine ethology and ethological training are becoming commonplace in the equestrian domain, yet they seem to be used with a conspicuous lack of clarity and with no mention of learning theory. Most of what we do to train horses runs counter to their innate preferences. This article summarizes the ethological challenges encountered by working horses and considers the merits and limitations of ethological solutions. It also questions the use of terms such as “alpha” and “leader” and examines aspects of learning theory, equine cognition, and ethology as applied to horse training and clinical behavior modification. We propose 7 training principles that optimally account for the horse's ethological and learning abilities and maintain maximal responsivity in the trained horse. These principles can be summarized as: (1) use learning theory appropriately; (2) train easy-to-discriminate signals; (3) train and subsequently elicit responses singularly; (4) train only one response per signal; (5) train all responses to be initiated and subsequently completed within a consistent structure; (6) train persistence of current operantly conditioned responses; and (7) avoid and disassociate flight responses. Adherence to these principles and incorporating them into all horse training methodologies should accelerate training success, reduce behavioral wastage of horses, and improve safety for both humans and horses.  
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  Call Number Equine Behaviour @ team @ Serial 4511  
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Author Apfelbach, R.; Blanchard, C.D.; Blanchard, R.J.; Hayes, R.A.; McGregor, I.S. doi  openurl
  Title The effects of predator odors in mammalian prey species: A review of field and laboratory studies Type Journal Article
  Year 2005 Publication Neuroscience and Biobehavioral Reviews Abbreviated Journal  
  Volume 29 Issue 8 Pages 1123-1144  
  Keywords Behavioral suppression; Defensive behavior; Endocrine effects; Neural effects; Predator odor; Small mammals  
  Abstract Prey species show specific adaptations that allow recognition, avoidance and defense against predators. For many mammalian species this includes sensitivity towards predator-derived odors. The typical sources of such odors include predator skin and fur, urine, feces and anal gland secretions. Avoidance of predator odors has been observed in many mammalian prey species including rats, mice, voles, deer, rabbits, gophers, hedgehogs, possums and sheep. Field and laboratory studies show that predator odors have distinctive behavioral effects which include (1) inhibition of activity, (2) suppression of non-defensive behaviors such as foraging, feeding and grooming, and (3) shifts to habitats or secure locations where such odors are not present. The repellent effect of predator odors in the field may sometimes be of practical use in the protection of crops and natural resources, although not all attempts at this have been successful. The failure of some studies to obtain repellent effects with predator odors may relate to (1) mismatches between the predator odors and prey species employed, (2) strain and individual differences in sensitivity to predator odors, and (3) the use of predator odors that have low efficacy. In this regard, a small number of recent studies have suggested that skin and fur-derived predator odors may have a more profound lasting effect on prey species than those derived from urine or feces. Predator odors can have powerful effects on the endocrine system including a suppression of testosterone and increased levels of stress hormones such as corticosterone and ACTH. Inhibitory effects of predator odors on reproductive behavior have been demonstrated, and these are particularly prevalent in female rodent species. Pregnant female rodents exposed to predator odors may give birth to smaller litters while exposure to predator odors during early life can hinder normal development. Recent research is starting to uncover the neural circuitry activated by predator odors, leading to hypotheses about how such activation leads to observable effects on reproduction, foraging and feeding. © 2005 Elsevier Ltd. All rights reserved.  
  Address School of Psychology, University of Sydney, Sydney, NSW 2006, Australia  
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  Call Number Equine Behaviour @ team @ Serial 4565  
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Author Wanker, R.; Apcin, J.; Jennerjahn, B.; Waibel, B. doi  openurl
  Title Discrimination of different social companions in spectacled parrotlets ( Forpus conspicillatus ): evidence for individual vocal recognition Type Journal Article
  Year 1998 Publication Behavioral Ecology and Sociobiology Abbreviated Journal Behav. Ecol. Sociobiol.  
  Volume 43 Issue 3 Pages 197-202  
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  Abstract Abstract: Individual recognition is generally assumed to be a prerequisite for establishing and maintaining a complex social system. Indeed, there is good evidence that highly social species have complex systems of vocal communication with individual recognition by acoustic cues. In this study, we provide experimental evidence that vocal class and individual recognition is present in a non-passerine bird, the spectacled parrotlet (Forpus conspicillatus). Spectacled parrotlets live in a complex system of social relationships. Soon after fledging, the young establish close sibling relationships which are important for successful socialization, pairing and reproduction. In a series of playback experiments we tested if spectacled parrotlets use contact calls for vocal recognition. The results showed that spectacled parrotlets discriminate between the contact calls of different social categories. Adult birds preferred to respond to the contact calls of their mates. Subadult individuals recognized the contact calls of their siblings. During the period of pair bond formation, the affiliative contacts to the siblings decrease, but the parrotlets continue to respond to the calls of their siblings. This is the first evidence that vocal sibling recognition might outlast the period of strong sibling interaction and extends into the period of pair bond formation. In cases of mate loss or divorce, the acoustic contact to their siblings might facilitate the re-establishment of close sibling relationships.  
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  Call Number Equine Behaviour @ team @ Serial 4571  
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Author Giebel, H.D. openurl 
  Title Visuelles lernvermögen bei Einhufern Type Journal Article
  Year 1958 Publication Horse Behavior, 1983 Abbreviated Journal Zool. Jahrb. 67  
  Volume Issue Pages 229-231  
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  Notes Cited By (since 1996): 1; Export Date: 24 October 2008 Approved no  
  Call Number Admin @ knut @ Serial 4588  
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Author Ferrari, M.C.O.; Capitania-Kwok, T.; Chivers, D.P. doi  openurl
  Title The role of learning in the acquisition of threat-sensitive responses to predator odours Type Journal Article
  Year 2006 Publication Behavioral Ecology and Sociobiology Abbreviated Journal Behav. Ecol. Sociobiol.  
  Volume 60 Issue 4 Pages 522-527  
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  Abstract The supposition that prey animals respond to a predator with an intensity that matches the risk posed by the predator is known as the threat-sensitive predator avoidance hypothesis. Many studies have provided support for this hypothesis; yet, few studies have attempted to determine how such abilities are acquired by prey species. In this study, we investigated whether fathead minnows (Pimephales promelas) could learn to recognize an unknown predator (northern pike, Esox lucius) in such a way that they could match the intensity of their antipredator response with the threat posed by the predator. We exposed pike-naive minnows to conspecific alarm cues paired with either a high or low concentration of pike odor. The following day, both groups were tested for a response to either high or low concentration of pike odor alone. We found that minnows conditioned with alarm cues paired with a given concentration of pike odor subsequently responded with a higher intensity to higher concentrations of pike odor, and with a lower intensity to lower concentrations of pike odor. These results demonstrate that during a single conditioning trial, minnows learn the identity of the predator in a threat-sensitive manner. Minnows use predator odor concentrations that they experience in subsequent interactions to adjust the intensity of their antipredator behavior. © Springer-Verlag 2006.  
  Address Department of Biology, University of Saskatchewan, 112 Science Place, Saskatoon, Sask. S7N 5E2, Canada  
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  Notes Cited By (since 1996): 8; Export Date: 24 October 2008; Source: Scopus Approved no  
  Call Number Equine Behaviour @ team @ Serial 4620  
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Author Joynson, R. B. doi  openurl
  Title Towards understanding relationships, by Robert A. Hinde. London: Academic, 1979, pp xii + 367 Type Journal Article
  Year 1981 Publication Aggressive Behavior Abbreviated Journal  
  Volume 7 Issue 3 Pages 275-280  
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  Call Number Equine Behaviour @ team @ Serial 4813  
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Author Rappolt, G. A.; John, J.; Thompson, N. S. doi  openurl
  Title Canine responses to familiar and unfamiliar humans Type Journal Article
  Year 1979 Publication Aggressive Behavior Abbreviated Journal Aggressive Behavior  
  Volume 5 Issue 2 Pages 155-161  
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  Abstract Dogs were observed during controlled approaches by their owners and by strangers. Significant differences between the dogs' responses to their owners and their responses to strangers were found. These results supported the popular belief that dogs respond differently to different persons, and not merely to different situations in which persons are usually encountered.  
  Address Departments of Biology and Psychology, Clark University, Worcester, Massachusetts DOI – 10.1002/1098-2337(1979)5 – 2<155 – - AID-AB2480050206>3.0.CO;2-D  
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  Publisher Place of Publication Copyright © 1979 Wiley-Liss, Inc., A Wiley Company Editor  
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  Call Number Equine Behaviour @ team @ Serial 4978  
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Author Sih, A.; Hanser, S.; McHugh, K. url  doi
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  Title Social network theory: new insights and issues for behavioral ecologists Type Journal Article
  Year 2009 Publication Behavioral Ecology and Sociobiology Abbreviated Journal Behav. Ecol. Sociobiol.  
  Volume 63 Issue 7 Pages 975-988  
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  Abstract Abstract  Until recently, few studies have used social network theory (SNT) and metrics to examine how social network structure (SNS) might influence social behavior and social dynamics in non-human animals. Here, we present an overview of why and how the social network approach might be useful for behavioral ecology. We first note four important aspects of SNS that are commonly observed, but relatively rarely quantified: (1) that within a social group, differences among individuals in their social experiences and connections affect individual and group outcomes; (2) that indirect connections can be important (e.g., partners of your partners matter); (3) that individuals differ in their importance in the social network (some can be considered keystone individuals); and (4) that social network traits often carry over across contexts (e.g., SN position in male–male competition can influence later male mating success). We then discuss how these four points, and the social network approach in general, can yield new insights and questions for a broad range of issues in behavioral ecology including: mate choice, alternative mating tactics, male–male competition, cooperation, reciprocal altruism, eavesdropping, kin selection, dominance hierarchies, social learning, information flow, social foraging, and cooperative antipredator behavior. Finally, we suggest future directions including: (1) integrating behavioral syndromes and SNT; (2) comparing space use and SNS; (3) adaptive partner choice and SNS; (4) the dynamics and stability (or instability) of social networks, and (5) group selection shaping SNS.  
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  Call Number Equine Behaviour @ team @ Serial 4990  
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Author Zahn-Waxler, C; Radke-Yarrow, M. openurl 
  Title The Development of Altruism: Alternative Research Strategies Type Journal Article
  Year 1982 Publication The Development of Prosocial Behavior Abbreviated Journal  
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  Publisher New York: Academic Press Place of Publication New York Editor Eisenberg , N.  
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  Call Number Equine Behaviour @ team @ Serial 5011  
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Author Whitehead, H. doi  openurl
  Title SOCPROG programs: analysing animal social structures Type Journal Article
  Year 2009 Publication Behavioral Ecology and Sociobiology Abbreviated Journal Behav. Ecol. Sociobiol.  
  Volume 63 Issue 5 Pages 765-778  
  Keywords Social analysis – Software – Association  
  Abstract Abstract  SOCPROG is a set of programs which analyses data on animal associations. Data usually come from observations of the social behaviour of individually identifiable animals. Associations among animals, sampling periods, restrictions on the data and association indices can be defined very flexibly. SOCPROG can analyse data sets including 1,000 or more individuals. Association matrices are displayed using sociograms, principal coordinates analysis, multidimensional scaling and cluster analyses. Permutation tests, Mantel and related tests and matrix correlation methods examine hypotheses about preferred associations among individuals and classes of individual. Weighted network statistics are calculated and can be tested against null hypotheses. Temporal analyses include displays of lagged association rates (rates of reassociation following an association). Models can be fitted to lagged association rates. Multiple association measures, including measures produced by other programs such as genetic or range use data, may be analysed using Mantel tests and principal components analysis. SOCPROG also performs mark-recapture population analyses and movement analyses. SOCPROG is written in the programming language MATLAB and may be downloaded free from the World Wide Web.  
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  Call Number Equine Behaviour @ team @ Serial 5026  
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